Instruction Bulletin. Enclosed ALTISTART 46 Controller Supplemental Instruction Bulletin Class 8638 and 8639 INTRODUCTION

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Instruction Bulletin Bulletin No. 0006-39-03 May 997 Raleigh, NC, USA Enclosed ALTISTART 6 Controller Supplemental Instruction Bulletin Class 8638 and 8639 INTRODUCTION This bulletin is a supplement to the ALTISTART 6 (ATS6) Soft Start Controller User s Manual (Instruction Bulletin VD0C3S30), and contains setup and installation instructions for Class 8638 and 8639 Enclosed ATS6 Controllers. Figure : ATS6 Enclosed Controller The following information is included in this bulletin: Installation/Precautions Catalog Number Identification Elementary Diagrams s Component Coordination Tables Fuse Selection Technical Specifications 997 Square D Company All Rights Reserved

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 Exceptions to Bulletin VD0C3S30 May 997 INSTALLATION & PRECAUTIONS In addition to this bulletin, ATS6 Controllers are shipped with the following documentation: Elementary diagrams that illustrate the power, control and optional circuits of the controller. Outline dimension drawing(s) that identify the physical characteristics of the controller and contain installation information. Instruction Bulletin VD0C3S30, which describes the operation and characteristics of the ATS6 controller when used as a component of the Class 8638 or 8639 Enclosed Controller. DANGER HAZARDOUS VOLTAGE Disconnect all power before working on this equipment. Failure to observe this instruction will result in death or serious injury. Read, understand and follow all precautions contained in bulletin VD0C3S30. In addition, the following precautions unique to the Enclosed ATS6 Controller must be followed: The Enclosed ATS6 Controller can be installed in a Pollution Degree 3 environment, as defined in NEMA ICS-A and IEC 66-. When attaching wall mounted and free standing controllers, use fasteners rated for the weight of the apparatus, the expected shock and vibration of the installation, and the expected environment. During installation and operation, maintain the ventilation clearances specified on the outline dimension drawing(s). EXCEPTIONS TO BULLETIN VD0C3S30 When referencing Instruction Bulletin VD0C3S30 for Class 8638 or 8639 Enclosed ATS6 Controllers, note the following: The recommended components listed in Table 8 on pages 3 and 3 apply to Open ATS6 Controllers only. Refer to Tables 3-6 in this document for actual components used in Class 8638 and 8639 Enclosed ATS6 Controllers. The recommended overcurrent protection devices (OCPDs) listed in Table 9 of Appendix A apply to Open ATS6 Controllers. Refer to Tables 3-6 in this document for the OCPDs to be used with Class 8638 and 8639 Enclosed ATS6 Controllers. The dimensions listed on pages 0- (Figures 6-0) apply to Open ATS6 Controllers only. Refer to the specific documentation for the enclosed controller class you have (8638 or 8639). The Control Connections section on page may not apply to Class 8638 or 8639 Enclosed ATS6 Controllers, since the relay contacts shown may be incorporated into the control logic of the Enclosed product and may not be available for user connection. The wiring diagrams and associated information shown on pages 9-3 are provided as recommendations that apply to Open ATS6 Controllers, and do not necessarily apply to Class 8638 or 8639 Enclosed ATS6 Controllers. Refer to the elementary diagrams included with this package and sample diagrams on pages -8 of this document. 997 Square D Company All Rights Reserved

Bulletin No. 0006-39-03 May 997 CATALOG NUMBER IDENTIFICATION Enclosed ATS6 Controller Supplemental Instruction Bulletin Catalog Number IDs The catalog numbers for Enclosed ATS6 Controllers, Class 8638 and 8639, can be interpreted as follows: Table : Catalog Number Identification Class Type 8638 N Start Duty D Amp A Enclosure Voltage S SCR Fault Isolation 8638, Fusible Disconnect 8639, Circuit Breaker N = Normal L = Long C = D = 7 E = F = 38 H = 7 I = 6 J = 7 K = 88 L = 0 M = N = 76 O = 0 P = 7 Q = 30 R = 0 S = 80 T = 90 U = 660 A = Type 8 = 08 = 30 = 60 S = Shunt Trip N = Isolation Contactor R = Reversing Isolation Contactor Example: 8638NDAS = ATS6 with fusible disconnect in Type enclosure, rated for 7 amps at 60 VAC, normal start, with shunt trip SCR fault isolation. 997 Square D Company All Rights Reserved 3

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 Forms May 997 FORMS The forms for Enclosed ATS6 Controllers, Classes 8638 and 8639, are as follows: Table : Modifications (Forms) Forms Function Form Description Pilot Devices in Cover and Control Circuit Relays and Meters Miscellaneous Pushbuttons Start-Stop A* Red Stop and green Start pushputtons. Fwd-Rev-Stop A* Emergency Off Ext Overload Reset Selector Switches A6** A7 Red Stop, green Forward, and amber Reverse pushbuttons. Pushbutton for immediate removal of control power. Pushbutton connected to logic input configured to require operator acknowledgment of motor thermal overload. Hand-off-Auto C 3-position selector switch. Stop-Run C6 -position selector switch. Pilot Lights One Pilot Light P RUN command Two Pilot Lights P P RUN and OFF One Push to Test Pilot Light P RUN command Two Push to Test Pilot Light P P RUN and OFF Fused Control Power Transformer Standard Capacity Additional Control Power Std T T 0 VAC, two primary, one secondary fuse standard. 00 additional VA 00 additional VA Auxiliary Relay R7 Adds an additional -pole unwired control relay. Electronic Timing Relay K Unwired - specify on/off delay and timing range. Ammeter G9 Single phase ammeter mounted in cover. Elapsed Time Meter G97 ETM mounted in cover, measures RUN time Operation Counter G99 Operation counter, mounted in cover, measures number of starts. Shorting Contactor Z Bypasses the controller once motor is up to speed. Standard in Type Enclosure, rated 7 amps and above. PC Software Option Z Substitute PC software for keypad. PLC Communication Option Non-Isolated Full Voltage Bypass Z Z Substitute PLC communication module for keypad. Includes overload and normal/bypass selector switch. May require power wiring modification to remove ATS6 control from the circuit. Only available with P N type models. * Modifications A and A do not include illuminated pushbuttons.pilot lights must be ordered separately. ** Not available on shunt trip models. Insert color code. Color Red Green Amber 3 997 Square D Company All Rights Reserved

Bulletin No. 0006-39-03 May 997 Enclosed ATS6 Controller Supplemental Instruction Bulletin Elementary Wiring Diagrams SAMPLE ELEMENTARY DIAGRAMS The following diagrams are shown as examples of typical controller configurations. Refer to the elementary diagrams provided with your ATS6 controller for actual configuration parameters. L L L3 MOLDED CASE SWITCH WITH SHUNT TRIP AND IN-LINE FUSE BLOCK FU FU FU3 FU6 FU7 V FU FU FU8 GND FAULT TR TRIP L TYPICAL POWER POLE T L T L3 Solid State Overload Relay C 0/ 60/ 30V 00V 00V T3 PL LI STOP RUN TR MOTOR THERMAL SWITCH 7 ST 6 6 FAULT TS TS SHUNT TRIP COIL RUN COMMAND Primary of the control power transformer is connected for the voltage shown on the controller nameplate. Refer to the s section of this document for information about factory settings and adjusting the configuration switch. Also refer to the "Parameter Adjustment Ring and Settings" section in Instruction Bulletin VD0C3S30 for information about setting adjustable parameters. For correct fuse selections, refer to Table 8 in this document. Refer to Tables 3 and for power fuse selection. M REMOVE JUMPER WHEN USING MOTOR SWITCH Figure : Typical Nonreversing with Shunt Trip Fault Isolation (Class 8638, Type NDAS, Form AP) STOP START 3-WIRE CONTROL Form A 6 R 7 RUN PILOT LIGHT Form P 997 Square D Company All Rights Reserved

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 Elementary Wiring Diagrams May 997 L L L3 MOLDED CASE SWITCH WITH IN-LINE FUSE BLOCK FU FU FU3 FU6 FU7 KM KM KM FU FU FU8 V GND REMOVE JUMPER(S) WHEN USING EMERGENCY OFF KM3 KM3 KM3 A B C L L L3 C 0/ 60/ 30V 00V 00V A A B TYPICAL POWER POLE C T T Solid State Overload Relay T3 PL LI STOP RUN KM KM MOTOR THERMAL SWITCH 7 6 6 TS RUN COMMAND H O A -3, X -3, X OFF HAND AUTO,3,3,, CUSTOMER -WIRE DEVICE H-O-A WITH -WIRE CONTROL 6 6 3 M RUN R OFF G PILOT LIGHT REMOVE JUMPER WHEN USING MOTOR SWITCH IR ISOLATION 3 END START UP IR TS KM TS KM3 TS ISO/FAULT ISOLATION SHORTING Form C Form PP 3 Primary of the control power transformer is connected for the voltage shown on the controller nameplate. Refer to the s section of this document for information about factory settings and adjusting the configuration switch. Also refer to the "Parameter Adjustment Ring and Settings" section in Instruction Bulletin VD0C3S30 for information about setting adjustable parameters. Configure relay R (located on the ATS6 controller) for isolation contactor control. For correct fuse selections, refer to Table 8 in this document. Refer to Tables 3 and for power fuse selection. Figure 3: Typical Nonreversing with Isolation Contactor (Class 8638, Type NDAN, Form CPP) 6 997 Square D Company All Rights Reserved

Bulletin No. 0006-39-03 May 997 Enclosed ATS6 Controller Supplemental Instruction Bulletin Elementary Wiring Diagrams L L L3 MOLDED CASE SWITCH WITH IN-LINE FUSE BLOCK FU FU FU3 FU7 FU6 KM KM KM KM KM KM V FU FU FU8 GND REMOVE JUMPER(S) WHEN USING EMERGENCY OFF A A KM KM KM3 KM3 KM3 A B C L L L3 C 0/ 30V 00V 60/ 00V KM KM 3 A B TYPICAL POWER POLE C T T Solid State Overload Relay T3 PL LI STOP RUN MOTOR THERMAL SWITCH 8 9 RFR RRR RFR TS RUN FWD M RRR KM RFR KM REMOVE JUMPER WHEN USING MOTOR SWITCH 0 RRR RFR FAULT RRR TS FR RUN REV FAULT PL LI OVERLOAD RESET FR RFR KM TS KM REV TS STOP FORWARD REVERSE 9 0 8 RRR KM END START UP KM TS KM3A TS FWD SHORTING PILOT 3-WIRE CONTROL Form A KM3A KM3 SHORTING Primary of the control power transformer is connected for the voltage shown on the controller nameplate. Refer to the s section of this document for information about factory settings and adjusting the configuration switch. Also refer to the "Parameter Adjustment Ring and Settings" section in Instruction Bulletin VD0C3S30 for information about setting adjustable parameters. For correct fuse selections, refer to Table 8 in this document. Refer to Tables 3 and for power fuse selection. Figure : Typical Reversing with Isolation Contactors (Class 8638, Type NMAR, Form A) TS 997 Square D Company All Rights Reserved 7

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 Elementary Wiring Diagrams May 997 L L L3 CIRCUIT BREAKER 7 FU7 GS GA 3 FU6 L L KM KM KM FU FU V GFR GFR FU8 A A GND REMOVE JUMPER(S) WHEN USING EMERGENCY OFF KM3 KM3 KM3 L TYPICAL POWER POLE L L3 Solid State Overload Relay C 0/ 60/ 30V 00V 00V MOTOR THERMAL SWITCH KM KM 6 6 7 TS RUN COMMAND A B C T T T3 PL LI STOP RUN REMOVE JUMPER WHEN USING MOTOR SWITCH ISOLATION IR ISO/FAULT 3 M Primary of the control power transformer is connected for the voltage shown on the controller nameplate. Refer to the s section of this document for information about factory settings and adjusting the configuration switch. Also refer to the "Parameter Adjustment Ring and Settings" section in Instruction Bulletin VD0C3S30 for information about setting adjustable parameters. Configure relay R (located on the ATS6 controller) for isolation contactor control. For correct fuse selections, refer to Table 8 in this document. Refer to Tables 3 and for power fuse selection. KM3A IR GA 3 END STARTUP TS KM TS KM3A TS KM3 TS GFR TS ISOLATION SHORTING PILOT SHORTING GROUND FAULT Figure : Nonreversing with Isolation Contactor, Shorting Contactor Pilot Relay (Class 8639, Type NMAN) 8 997 Square D Company All Rights Reserved

Bulletin No. 0006-39-03 May 997 Enclosed ATS6 Controller Supplemental Instruction Bulletin s FACTORY PRESETS The Enclosed ATS6 Controller, used as a component of Class 8638 or 8639, has a configuration switch that has been preset at the factory for either normal or long starting times. The factory presets are shown below. Parameter Switch Position Type N Standard Duty NOTE: For FLA factory presets, refer to Tables 3 and 6 in this document. Type L Heavy Duty Acceleration Ramp Acc 0 seconds seconds Current Limit Ilt 300% 30% Overload Protection thp Class 0 Class 0 To change the factory presets, the keypad must be removed from the enclosure door. For information on adjusting the factory presets, refer to Chapter 3 of Instruction Bulletin VD0C3S30. When replacing the keypad in the remote mounting, do not exceed 3 lb-in torque on the holding screws. Class 8638 and 8639 control logic may include one or more pneumatic time delay relays. The factory settings are as follows: Shunt trip power circuit: TR is factory set for seconds. Do not adjust. This time delay prevents the controller from fault tripping on startup. Isolation Contactor Power Circuit: The isolation contactor is controlled by the R relay and automatically adapts to the deceleration requirements, which may be changed at any time. The configuration of the R relay has been changed from the Fault configuration, which is used for the Shunt Trip and Reversing Power Circuits. Reversing power circuit: RFR and RRR - set for minimum setting (0 seconds). For freewheel stopping, the factory setting is adequate. For controlled deceleration, set slightly longer than the deceleration ramp time (DEC parameter setting). When using InTele braking, set the time delay relay to the maximum adjustment. After the stopping time is determined, the delay can be reduced to more closely match the braking application time. 997 Square D Company All Rights Reserved 9

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 Component Coordination Tables May 997 COMPONENT COORDINATION TABLES For class 8638 controllers, refer to Tables 3 and for selection of power fuses FU/FU/FU3. Use Tables 3-6 to determine which Altistart controller is used in your enclosed product. Then refer to Table 7 for selection of control fuses FU/FU. Fuse selection information may also be found on the nameplate located on the inside of the enclosure door. Table 3: Class 8638 Type N Standard Duty Component s Motor Voltage Type 08V 30V 60 Max Fuse Max Fuse Max Fuse Short Circuit Level ATS6 Model No.* Shorting & Isolation Contactor Components Molded Case Switch Transformer Power** Circuit S, N & R 08V 30/60 V ND 3 0 0 0 6 D7N D3 FHL36000M TF0D3 TF0D NE 7. 7. 30 30 6 DN D3 FHL36000M TF0D3 TF0D NF 7. 3.3 0 0 8 0 3 8 6 D38N D3 FHL36000M TF0D3 TF0D NH 0 3. 60 30 60 6 D7N D0 FHL36000M TF00D3 TF00D NI 70 8.3 0 70 0 70 6 D6N D0 FHL36000M TF00D3 TF00D NJ 0 80 6. 90 68 0 90 68 6 D7N D80 FHL36000M TF00D3 TF00D NK 00 80 30 0 80 60 00 80 6 D88N D80 FHL36000M TF00D3 TF00D NL 30 9 0 0 0 7 98 6 CN D80 KHL36000M TF00D3 TF00D NM 0 7 0 0 7 8 00 7 8 6 CN F0 KHL36000M TF00D3 TF00D NN 0 00 0 60 00 60 00 60 6 C7N F8 KHL36000M TF00D3 TF00D NO 60 0 77 7 0 90 0 0 80 6 CN F8 KHL36000M TF0D3 TF0D NP 7 300 00 30 8 00 30 36 6 CN F330 LHL36000M TF30D3 TF30D NQ 00 00 90 00 3 0 00 90 6 C3N F330 LHL36000M TF30D3 TF30D NR 00 367 0 00 367 300 00 367 6 CN F00 MHL36000 8M TF300D3 TF300D NS 0 600 30 30 600 30 6 C8N F00 MHL36000 8M TF300D3 TF300D NT 00 600 80 80 600 80 6 C9N F00 MHL36000 8M TF300D3 TF300D NU 00 70 0 800 60 00 80 60 6 C66N F00 MHL36000 8M TF300D3 TF300D All devices are rated for six 3-second starts per hour in 0 C ambient except type NU, which is rated for two -second starts per hour in 30 C ambient. If you require additional starting capabilities, contact Square D. * Refer to Table 7 for Control Fusing. ** Refer to Table 8 for Transformer Fusing. Table : Class 8638 Type L Heavy Duty Component s Motor Voltage Type 08V 30V 60 Max Fuse Max Fuse Short Circuit Level 0 997 Square D Company All Rights Reserved Max Fuse Withstand (ka) ATS6 Model No.* ATS6- Shorting & Isolation Contactor Components Molded Case Switch Transformer Power** Circuit S, N & R 08V 30/60 V LC 7.8 3 7. 9.6 7. 0 6 D7N D3 FHL36000M TF0D3 TF0D LD 3 0 30. 0 6 DN D3 FHL36000M TF0D3 TF0D LE 3 7. 7. 0 0 6 D38N D3 FHL36000M TF0D3 TF0D LF 7..3 0 0 8 0 0 8 6 D7N D0 FHL36000M TF00D3 TF00D LH 0 60 3. 80 30 70 6 D6N D0 FHL36000M TF00D3 TF00D LI 90 8.3 0 00 0 00 6 D7N D0 FHL36000M TF00D3 TF00D LJ 0 0 6 68 0 68 6 D88N D80 FHL36000M TF00D3 TF00D LK 0 7 30 0 80 60 0 7 6 CN D80 FHL36000M TF00D3 TF00D LL 30 7 9 0 00 0 7 7 98 6 CN F80 KHL36000M TF00D3 TF00D LM 0 0 0 0 8 00 8 6 C7N F8 KHL36000M TF0D3 TF00D LN 0 300 0 60 300 60 300 60 6 CN F8 KHL36000M TF0D3 TF0D LO 60 30 76 7 30 90 0 30 80 6 CN F8 KHL36000M TF0D3 TF30D LP 7 00 00 0 8 00 0 0 6 C3N F330 LHL36000M TF30D3 TF30D LQ 00 00 90 600 3 0 600 90 6 CN F00 MHL36000 8M TF300D3 TF300D LR 60 39 0 60 360 300 60 36 6 C8N F00 MHL36000 8M TF300D3 TF300D LS 0 800 0 30 800 0 6 C9N F00 MHL36000 8M TF300D3 TF300D LT 00 000 80 00 000 80 6 C66N F00 MHL36000 8M TF300D3 TF300D All devices are rated for three 6-second starts per hour in 0 C ambient. * Refer to Table 7 for Control Fusing. ** Refer to Table 8 for Transformer Fusing. Withstand (ka) ATS6- LCI- LCI-

Bulletin No. 0006-39-03 May 997 Enclosed ATS6 Controller Supplemental Instruction Bulletin Component Coordination Tables Table : Class 8639 Type N Standard Duty Component s Motor Voltage Type 08V 30V 60 FLA (I n ) FLA (I n ) FLA (I n ) Short Circuit Level ATS6 Model No.* Shorting & Isolation Contactor Components Max Circuit Breaker Transformer Power** Circuit S, N & R 08V 30/60 V ND 3 0 D7N FAL36030 D3 Thermal Magnetic TF0D3 TF0D NE 7. 7. DN D3 FAL36030 - M TF0D3 TF0D NF 7..3 0 8 0 8 D38N D3 FAL3600-6M TF0D3 TF0D NH 0 3. 30 D7N D0 FAL3600-8M TF00D3 TF00D NI 8.3 0 0 D6N D0 FAL3600-8M TF00D3 TF00D NJ 0 6. 68 0 68 0 D7N D80 FAL3600-8M TF00D3 TF00D NK 80 30 80 60 80 0 D88N D80 KAL360 - M TF00D3 TF00D NL 30 9 0 0 7 98 0 CN D80 KAL360 - M TF00D3 TF00D NM 0 0 0 8 00 8 0 CN F0 KAL30-9M TF00D3 TF00D NN 0 0 60 60 60 0 C7N F8 KAL360-3M TF00D3 TF00D NO 60 77 7 90 0 80 8 CN F8 KAL360-3M TF0D3 TF0D NP 7 00 8 00 36 8 CN F330 LAL3600-3M TF30D3 TF30D NQ 00 90 3 0 90 8 C3N F330 LAL3600-36M TF30D3 TF30D NR 367 0 367 300 367 30 CN F00 MAL36600-0M TF300D3 TF300D NS 0 30 30 30 30 C8N F00 MAL36600 - M TF300D3 TF300D NT 00 80 80 80 30 C9N F00 MAL36800 - M TF300D3 TF300D NU 00 0 60 00 60 30 C66N F00 MAL36800 - M TF300D3 TF300D All devices are rated for six 3-second starts per hour in 0 C ambient except type NU, which is rated for two -second starts per hour in 30 C ambient. If you require additional starting capabilities, contact Square D. *Refer to Table 7 for Control Fusing. **Refer to Table 8 for Transformer Fusing. Table 6: Class 8639 Type L Heavy Duty Component s Motor Voltage Type 08V 30V 60 Short Circuit Level ATS6 Model No.* Shorting & Isolation Contactor Components Max Circuit Breaker Withstand (ka) ATS6- LCI- (amps) Transformer Power* Circuit** S, N & R 08V 30/60 V LC 7.8 3 9.6 7. D7N FAL3600 D3 Thermal Magnetic TF0D3 TF0D LD 3. 0 DN D3 FAL36030 - M TF0D3 TF0D LE 7. 7. D38N D3 FAL36030 - M TF0D3 TF0D LF 7..3 0 8 0 8 D7N D0 FAL3600-6M TF00D3 TF00D LH 0 3. 30 D6N D0 FAL3660-8M TF00D3 TF00D LI 8.3 0 0 0 D7N D0 FAL3600-8M TF00D3 TF00D LJ 0 6 68 0 68 0 D88N D80 FAL3600-8M TF00D3 TF00D LK 7 30 80 60 7 0 CN D80 KAL66 - M TF00D3 TF00D LL 30 9 0 0 7 98 0 CN F80 KAL60 - M TF00D3 TF00D LM 0 0 0 8 00 8 0 C7N F8 KAL30-9M TF00D3 TF00D LN 0 0 60 60 60 8 CN F8 KAL360-3M TF0D3 TF0D LO 60 76 7 90 0 80 8 CN F8 KAL360-3M TF30D3 TF30D LP 7 00 8 00 0 8 C3N F330 KAL3600-3M TF30D3 TF30D LQ 00 90 3 0 90 30 CN F00 MAL36600-0M TF300D3 TF300D LR 39 0 360 300 36 30 C8N F00 MAL36600-0M TF300D3 TF300D LS 0 0 30 0 30 C9N F00 MAL36600 - M TF300D3 TF300D LT 00 80 00 80 30 C66N F00 MAL36800 - M TF300D3 TF300D All devices are rated for three 6-second starts per hour. * Refer to Table 7 for Control Fusing. **Refer to Table 8 for Transformer Fusing. Withstand (ka) ATS6- LCI- 997 Square D Company All Rights Reserved

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 Component Coordination Tables May 997 Table 7: ATS6 Control Power Fuse s Class CC Fuse at Motor Voltage ATS6 Model 08V 30V 60V D7N / amp / amp / amp DN / amp / amp / amp D38N / amp / amp / amp D7N / amp / amp / amp D6N / amp / amp / amp D7N / amp / amp / amp D88N / amp / amp / amp CN / amp / amp / amp CN / amp / amp / amp C7N.6 amp.6 amp 0.8 amp CN.6 amp.6 amp 0.8 amp CN.6 amp.6 amp 0.8 amp C3N.6 amp.6 amp 0.8 amp CN amp amp amp C8N amp amp amp C9N amp amp amp C66N amp amp amp To determine which ATS6 Model is used, refer to Tables 3-6. Table 8: ATS6 Transformer Fuse s Class 9070 Transformer Type 08V Primary Fuse: FNQ-R 0V Secondary Fuse: FNQ-R Class 9070 Transformer Type 30V 60V 0V Primary Fuse: FNQ-R Primary Fuse: FNQ-R Secondary Fuse: FNQ-R TF0D3 / amp 6/0 amp TF0D / amp /0 amp 6/0 amp TF00D3 /8 amp / amp TF00D amp / amp / amp TF0D3 3 amp 3 amp TF0D / amp / amp 3 amp TF300D3 3 / amp amp TF300D 3 amp / amp amp TF30D3 amp amp TF30D 3 / amp 8/0 amp amp TF00D3 amp 7 amp TF00D 3 /0 amp / amp 7 amp To determine which transformer is used, refer to Tables 3-6. 997 Square D Company All Rights Reserved

Bulletin No. 0006-39-03 May 997 Enclosed ATS6 Controller Supplemental Instruction Bulletin Technical Specifications TECHNICAL SPECIFICATIONS Environment Characteristics Operation Protection Degree of protection The Type enclosures are sealed to prevent dust and oil from entering the cabinet. The doors are gasketed, the -mm door mounted operator devices are oil tight. Enclosures are painted beige as standard. Conformity to standards Conforms to UL08; CSA. No., UL Listed, CSA Certified. Immunity to radioelectrical interference: conforms to IEC 80-3. Operational test vibration Conforms to IEC 7-3-3-3M3 amplitude peak to peak from -9 Hz. Transit test to shock Conforms to National Safe Transit Association and International Safe Transit Association test for packages weighing 00 lbs and over. Ambient air temperature Operation: Ambient conditions in installed area from 0 to 0 C; Storage: - to +70 C. Maximum relative humidity 93% non-condensing Maximum operating altitude 000 m (3300 ft.), derate by.% for each additional 00 m up to 3000 m maximum. 3-phase supply voltage 08 VAC ± 0%; 30 VAC ± %; 60 VAC ± % Control voltage VAC (CPT included as standard) Frequency 0/60 Hz Rated current See Product Selection Tables 3 and 6. Motor power to 00 hp Motor voltage 08, 0, 30, 0, 60, 80 Duty cycle [] Type N: 6 starts per hour, 300% current limit, 6 seconds per start Type L: 3 starts per hour, 30% current limit, 6 seconds per start Methods of Starting: Torque ramp Adjustable from to 30 seconds by keypad Current limitation Adjustable from 0% to 00% of controller-rated current by keypad Booster start-up pulse Full voltage starting for cycles of 0 to 00% mains voltage, selectable by keypad Methods of Stopping: Freewheel Coast to rest on stop command Torque deceleration ramp Adjustable from to 60 seconds by keypad InTele Braking Selectable by keypad Status and Diagnostics: Digital display of motor and controller status, including Ready/Run/Fault Status Motor Current Motor Torque Motor Thermal State Power Factor Motor: Thermal overload Solid state thermal overload is integral to the Altistart controller. Selectable overload class 0, 0, or 30 via keypad. Range is 0% to 00% of Altistart controller rated current. Shunt-trip disconnect Removes all power from controller cabinet when the Altistart controller detects a fault condition. Isolation contactor Removes supply power from SCR power circuit and motor when motor is not running or when the Altistart controller detects a fault condition. Controller: OCPD Provides Type coordination to the short circuit current withstand ratings. Fuses should be selected for motor protection from Tables 3 and, Component Coordination Tables. Shorting contactor Standard on controllers in Type enclosures rated over 0 A, and optional in Type enclosures rated over 0 A; reduces temperature rise within the enclosure by eliminating the watts loss of SCRs. Control of contactor allows all forms of stopping. Controllers rated 7 to 6 A have one thermal switch to protect against overheating. Thermal switch Controllers rated 7 A and above have thermal switches, one controls the fan, the other protects against overheating. [] Type NU controllers are rated for two -second starts per hour in a 30 C ambient. For additional specifications on the open ATS6 controller, refer to Instruction Bulletin VD0C3S30. 997 Square D Company All Rights Reserved 3

Enclosed ATS6 Controller Supplemental Instruction Bulletin Bulletin No. 0006-39-03 May 997 997 Square D Company. All rights reserved. This document may not be copied in whole or in part, or transferred to any other media, without the written permission of Square D. ALTISTART is a registered trademark of Telemecanique S.A. or its successor-in-interest, Schneider Electric S.A. InTele braking is a trademark of Square D Company. 997 Square D Company All Rights Reserved